The caudal solitary complex (cSC) is a cardiorespiratory integrative center in the dorsal medulla oblongata that plays a vital role in the central CO2-chemoreceptive network. Neurons in this area respond to hypercapnic acidosis (HA) by a depolarization of the membrane potential and increase in firing rate, however a definitive mechanism for this response remains unknown. Likewise, CO2-chemoreceptive neurons in the cSC respond to hyperoxia in a similar fashion, but via a free radical mediated mechanism. It remains unknown if the response to increased pO2 is merely an increase in redox signaling, or if it’s the result of a pathological state of redox stress. Importantly, free radical production is known to be stimulated by increasing pO2, and...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
The caudal solitary complex (cSC) is a cardiorespiratory integrative center in the dorsal medulla ob...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
The caudal solitary complex (cSC) is a cardiorespiratory integrative center in the dorsal medulla ob...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
We tested the hypothesis that decreasing the control level of O2 from 95% to 40% reduces tissue part...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...